Clint Chapple

Affiliations: 
Biochemistry Purdue University, West Lafayette, IN, United States 
Area:
lignin
Website:
http://www.purdue.edu/discoverypark/energy/directory/view.php?id=75
Google:
"Clint Chapple"
Bio:

http://www.gradschool.purdue.edu/pulse/faculty_cascade.cfm?alias=chapple
https://ag.purdue.edu/biochem/Pages/ProfilePages/chapple.aspx

Cross-listing: Chemistry Tree

Children

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John M Humphreys grad student Purdue
Amber M. Shirley grad student 2002 Purdue (Chemistry Tree)
Michael G. Thompson grad student 2000-2002 University of Oklahoma
Matthew R. Hemm grad student 2003 Purdue (Chemistry Tree)
Taksina Sinlapadech grad student 2006 Purdue (Chemistry Tree)
Christopher M. Fraser grad student 2001-2007 Bioanalytical Computing
Jake Stout grad student 2001-2007 University of Manitoba
Jing-Ke Weng grad student 2009 Purdue (Chemistry Tree)
Rochus Franke post-doc 1999-2001 University of Bonn (Chemistry Tree)
Xu Li post-doc 2006-2010 NCSU
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Publications

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Kim JI, Hidalgo-Shrestha C, Bonawitz ND, et al. (2021) Spatio-temporal control of phenylpropanoid biosynthesis by inducible complementation of a cinnamate 4-hydroxylase mutant. Journal of Experimental Botany
Mao X, Weake VM, Chapple C. (2019) Mediator function in plant metabolism revealed by large-scale biology. Journal of Experimental Botany
Kim JI, Zhang X, Pascuzzi PE, et al. (2019) Glucosinolate and phenylpropanoid biosynthesis are linked by proteasome-dependent degradation of PAL. The New Phytologist
Yang H, Zhang X, Luo H, et al. (2019) Overcoming cellulose recalcitrance in woody biomass for the lignin-first biorefinery. Biotechnology For Biofuels. 12: 171
Mao X, Kim JI, Wheeler MT, et al. (2019) Mutation of Mediator subunit CDK8 counteracts the stunted growth and salicylic acid hyper-accumulation phenotypes of an Arabidopsis MED5 mutant. The New Phytologist
Muro-Villanueva F, Mao X, Chapple C. (2019) Linking phenylpropanoid metabolism, lignin deposition, and plant growth inhibition. Current Opinion in Biotechnology. 56: 202-208
Dolan WL, Chapple C. (2018) Transcriptome Analysis of Four Mediator Tail Mutants Reveals Overlapping and Unique Functions in Gene Regulation. G3 (Bethesda, Md.)
Guo L, Wang P, Jaini R, et al. (2018) Dynamic modeling of subcellular phenylpropanoid metabolism in Arabidopsis lignifying cells. Metabolic Engineering
Wang P, Guo L, Jaini R, et al. (2018) A C isotope labeling method for the measurement of lignin metabolic flux in Arabidopsis stems. Plant Methods. 14: 51
Dolan WL, Dilkes BP, Stout JM, et al. (2017) Mediator Complex Subunits MED2, MED5, MED16, and MED23 Genetically Interact in the Regulation of Phenylpropanoid Biosynthesis. The Plant Cell
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